ISM properties in low-metallicity environments I. mid-infrared spectra of dwarf galaxies
S. C. Madden, F. Galliano, A. P. Jones, M. Sauvage

TL;DR
This study investigates the properties of the interstellar medium in low-metallicity dwarf galaxies using mid-infrared spectra, revealing distinct features such as faint PAH bands and high ionization line ratios, influenced by radiation field hardness and metallicity.
Contribution
It provides new mid-infrared spectral data of dwarf galaxies and analyzes the impact of metallicity and radiation fields on ISM components, especially PAHs and VSGs, in low-metallicity environments.
Findings
PAH features are faint in low-metallicity starburst galaxies.
High [NeIII]/[NeII] ratios indicate pervasive hard radiation fields.
PAHs are likely destroyed by intense radiation in low-metallicity ISM.
Abstract
We present new ISOCAM mid-infrared spectra of three starbursting nearby dwarf galaxies, NGC1569, IIZw40, NGC1140 and the 30Dor region of the LMC and explore the properties of the ISM in low-metallicity environments, also using additional sources from the literature. We analyse the various components of the ISM probed by the mid-infrared observations and compare them with other Galactic and extragalactic objects. The MIR spectra of the low-metallicity starburst sources are dominated by the [NeIII] and [SIV] lines, as well as a steeply rising dust continuum. PAH bands are generaly faint, both locally and averaged over the full galaxy, in stark contrast to dustier starburst galaxies, where the PAH features are very prominant and even dominate on global scales. The hardness of the modeled interstellar radiation fields for the dwarf galaxies increases as the presence of PAH band emission…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Galaxies: Formation, Evolution, Phenomena · Stellar, planetary, and galactic studies
